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Irradiation of hydrophobic coating materials by gamma-rays and protons: Space applications

机译:伽玛射线和质子辐照疏水性涂料的空间应用

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The responses of hydrophobic silicone-based coatings following irradiation by Co-60-gamma-rays are reported. The dimethylsilicone (DMS) resin coatings consisted of neat samples and samples incorporating semiconductor metal oxide (SMO) irradiated at photon energies of 1.17 and 1.33 MeV. Pre-and post-irradiation measurements indicated that at a total dose of ~ 185 krad(Si) there was no significant change to the coating static hydrophobic contact angles, surface molecular structure and biocide neutralization efficiency. The data was compared with previously irradiated and reported DMS/SMO coatings at a proton fluence of~1.5 × 10~(12) p/cm~2. Potential space applications for the radiation resistant coating self- cleaning properties are presented as well as a discussion of other environmental testing required to qualify the technology for transition to photonic space applications.
机译:据报道,疏水性有机硅基涂料在Co-60-γ射线辐照后的响应。二甲基硅树脂(DMS)树脂涂层由纯净的样品和掺有以1.17和1.33 MeV的光子能量辐照的半导体金属氧化物(SMO)的样品组成。辐照前后的测量表明,在总剂量为185 krad(Si)时,涂层的静态疏水接触角,表面分子结构和杀生物剂的中和效率没有明显变化。将该数据与先前辐照和报道的DMS / SMO涂层的质子通量为〜1.5×10〜(12)p / cm〜2进行比较。介绍了具有抗辐射涂层自清洁性能的潜在太空应用,并讨论了使该技术有资格过渡到光子太空应用所需的其他环境测试。

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